Mount Kuring-Gai, Australia

Christine Anne Deller


Average Co-Inventor Count = 4.4

ph-index = 1

Forward Citations = 4(Granted Patents)


Company Filing History:


Years Active: 2014-2015

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2 patents (USPTO):Explore Patents

Title: Christine Anne Deller: Innovator in Color Encoding and Imaging Technology

Introduction

Christine Anne Deller is a notable inventor based in Mount Kuring-Gai, Australia. She has made significant contributions to the fields of color encoding and imaging technology. With a total of 2 patents, her work has advanced the understanding and application of color representation and geometric measurement in imaging devices.

Latest Patents

Deller's latest patents include a method for color encoding clustering. This innovative approach determines representative color encodings by analyzing a set of candidate color encodings based on perceptual attributes. Each candidate is assigned to a specific cluster, allowing for the identification of a representative color encoding for each group. Another significant patent involves the geometric parameter measurement of an imaging device. This method utilizes a two-dimensional target image with alignment patterns to determine three-dimensional geometric parameters by comparing captured images with the target.

Career Highlights

Christine Deller is associated with Canon Kabushiki Kaisha, where she has been able to apply her expertise in imaging technology. Her work has not only contributed to the company's advancements but has also positioned her as a key figure in the field of color encoding and imaging.

Collaborations

Deller has collaborated with notable colleagues, including David Peter Morgan-Mar and Stephen James Hardy. These partnerships have fostered innovation and have led to the development of cutting-edge technologies in their respective fields.

Conclusion

Christine Anne Deller's contributions to color encoding and imaging technology highlight her role as a leading inventor. Her patents reflect her commitment to advancing technology and improving the accuracy of imaging devices.

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